Shen Q, Zhang P, Ho T H
Department of Biology, Washington University, St. Louis, Missouri 63130, USA.
Plant Cell. 1996 Jul;8(7):1107-19. doi: 10.1105/tpc.8.7.1107.
The modular nature of the abscisic acid response complex (ABRC), the promoter unit necessary and sufficient for abscisic acid (ABA) induction of gene expression in barley, is defined in this study. We investigated ABA induction of a barley late embrogenesis abundant (Lea) gene, HVA1, and found that the ABRC of this gene consists of a 10-bp box with an ACGT core (ACGT-box) and the 11 bp directly upstream, named coupling element 3 (CE3). Only one copy of this ABRC is sufficient to confer ABA induction when linked to a minimal promoter. Because we previously reported another ABRC in the barley HVA22 gene, which consists of an ACGT-box with a distal coupling element (CE1), exchange experiments were conducted to study the interaction among modular elements in these ABRCs. We show that ACGT-boxes in these ABRCs are interchangeable, indicating that an ACGT-box can interact with either a distal or a proximal coupling element to confer ABA response. However, the two coupling elements are not fully exchangeable. Although CE3 can function either proximal or distal to the ACGT-box, CE1 is only functional at the distal position. The presence of both the distal and the proximal coupling elements has a synergistic effect on the absolute level of expression as well as on ABA induction. These ABRCs function in both seed and vegetative tissues. In seeds, ABA induction of the ABRC containing the proximal CE3, but not the ABRC with the distal CE1, is enhanced in the presence of the transcription regulator Viviparous1, indicating that these two ABRCs are mediated by different ABA signal transduction pathways.
本研究确定了脱落酸反应复合体(ABRC)的模块化性质,ABRC是大麦中脱落酸(ABA)诱导基因表达所必需且充分的启动子单元。我们研究了大麦晚期胚胎发育丰富(Lea)基因HVA1的ABA诱导情况,发现该基因的ABRC由一个带有ACGT核心的10碱基框(ACGT框)和其上游11个碱基组成,命名为偶联元件3(CE3)。当与最小启动子相连时,该ABRC的一个拷贝就足以赋予ABA诱导能力。因为我们之前报道过大麦HVA22基因中的另一个ABRC,它由一个带有远端偶联元件(CE1)的ACGT框组成,所以进行了交换实验来研究这些ABRC中模块化元件之间的相互作用。我们发现这些ABRC中的ACGT框是可互换的,这表明一个ACGT框可以与远端或近端偶联元件相互作用以赋予ABA反应。然而,这两个偶联元件并非完全可互换。虽然CE3在ACGT框的近端或远端都能发挥作用,但CE1仅在远端位置起作用。远端和近端偶联元件的同时存在对表达的绝对水平以及ABA诱导都有协同作用。这些ABRC在种子和营养组织中都起作用。在种子中,转录调节因子Viviparous1的存在增强了含有近端CE3的ABRC的ABA诱导作用,但对含有远端CE1的ABRC没有影响,这表明这两个ABRC是由不同的ABA信号转导途径介导的。